Add a library of common test functions
[platform/upstream/libxkbcommon.git] / test / state.c
1 /*
2  * Copyright © 2012 Intel Corporation
3  *
4  * Permission is hereby granted, free of charge, to any person obtaining a
5  * copy of this software and associated documentation files (the "Software"),
6  * to deal in the Software without restriction, including without limitation
7  * the rights to use, copy, modify, merge, publish, distribute, sublicense,
8  * and/or sell copies of the Software, and to permit persons to whom the
9  * Software is furnished to do so, subject to the following conditions:
10  *
11  * The above copyright notice and this permission notice (including the next
12  * paragraph) shall be included in all copies or substantial portions of the
13  * Software.
14  *
15  * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
16  * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
17  * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
18  * THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM, DAMAGES OR OTHER
19  * LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE, ARISING
20  * FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR OTHER
21  * DEALINGS IN THE SOFTWARE.
22  *
23  * Author: Daniel Stone <daniel@fooishbar.org>
24  */
25
26 #include <assert.h>
27 #include <stdio.h>
28 #include <stdlib.h>
29 #include <linux/input.h>
30
31 #include "xkbcommon/xkbcommon.h"
32 #include "xkbcommon/xkbcommon-names.h"
33 #include "xkb-priv.h"
34 #include "test.h"
35
36 /* Offset between evdev keycodes (where KEY_ESCAPE is 1), and the evdev XKB
37  * keycode set (where ESC is 9). */
38 #define EVDEV_OFFSET 8
39
40 static void
41 print_state(struct xkb_state *state)
42 {
43     struct xkb_keymap *keymap;
44     xkb_group_index_t group;
45     xkb_mod_index_t mod;
46     xkb_led_index_t led;
47
48     group = xkb_state_serialize_group(state, XKB_STATE_EFFECTIVE);
49     mod = xkb_state_serialize_mods(state, XKB_STATE_EFFECTIVE);
50     /* led = xkb_state_serialize_leds(state, XKB_STATE_EFFECTIVE); */
51     if (!group && !mod /* && !led */) {
52         fprintf(stderr, "\tno state\n");
53         return;
54     }
55
56     keymap = xkb_state_get_map(state);
57
58     for (group = 0; group < xkb_map_num_groups(keymap); group++) {
59         if (!xkb_state_group_index_is_active(state, group, XKB_STATE_EFFECTIVE))
60             continue;
61         fprintf(stderr, "\tgroup %s (%d): %s%s%s%s\n",
62                 xkb_map_group_get_name(keymap, group),
63                 group,
64                 xkb_state_group_index_is_active(state, group, XKB_STATE_EFFECTIVE) ?
65                     "effective " : "",
66                 xkb_state_group_index_is_active(state, group, XKB_STATE_DEPRESSED) ?
67                     "depressed " : "",
68                 xkb_state_group_index_is_active(state, group, XKB_STATE_LATCHED) ?
69                     "latched " : "",
70                 xkb_state_group_index_is_active(state, group, XKB_STATE_LOCKED) ?
71                     "locked " : "");
72     }
73
74     for (mod = 0; mod < xkb_map_num_mods(keymap); mod++) {
75         if (!xkb_state_mod_index_is_active(state, mod, XKB_STATE_EFFECTIVE))
76             continue;
77         fprintf(stderr, "\tmod %s (%d): %s%s%s\n",
78                 xkb_map_mod_get_name(keymap, mod),
79                 mod,
80                 xkb_state_mod_index_is_active(state, mod, XKB_STATE_DEPRESSED) ?
81                     "depressed " : "",
82                 xkb_state_mod_index_is_active(state, mod, XKB_STATE_LATCHED) ?
83                     "latched " : "",
84                 xkb_state_mod_index_is_active(state, mod, XKB_STATE_LOCKED) ?
85                     "locked " : "");
86     }
87
88     for (led = 0; led < xkb_map_num_leds(keymap); led++) {
89         if (!xkb_state_led_index_is_active(state, led))
90             continue;
91         fprintf(stderr, "\tled %s (%d): active\n",
92                 xkb_map_led_get_name(keymap, led),
93                 led);
94     }
95 }
96
97 static void
98 test_update_key(struct xkb_keymap *keymap)
99 {
100     struct xkb_state *state = xkb_state_new(keymap);
101     const xkb_keysym_t *syms;
102     int num_syms;
103
104     assert(state);
105
106     /* LCtrl down */
107     xkb_state_update_key(state, KEY_LEFTCTRL + EVDEV_OFFSET, XKB_KEY_DOWN);
108     fprintf(stderr, "dumping state for LCtrl down:\n");
109     print_state(state);
110     assert(xkb_state_mod_name_is_active(state, XKB_MOD_NAME_CTRL,
111                                         XKB_STATE_DEPRESSED));
112
113     /* LCtrl + RAlt down */
114     xkb_state_update_key(state, KEY_RIGHTALT + EVDEV_OFFSET, XKB_KEY_DOWN);
115     fprintf(stderr, "dumping state for LCtrl + RAlt down:\n");
116     print_state(state);
117     assert(xkb_state_mod_name_is_active(state, XKB_MOD_NAME_CTRL,
118                                         XKB_STATE_DEPRESSED));
119     assert(xkb_state_mod_name_is_active(state, XKB_MOD_NAME_ALT,
120                                         XKB_STATE_DEPRESSED));
121     assert(xkb_state_mod_names_are_active(state, XKB_STATE_DEPRESSED,
122                                           XKB_STATE_MATCH_ALL,
123                                           XKB_MOD_NAME_CTRL,
124                                           XKB_MOD_NAME_ALT,
125                                           NULL));
126     assert(!xkb_state_mod_names_are_active(state, XKB_STATE_DEPRESSED,
127                                            XKB_STATE_MATCH_ALL,
128                                            XKB_MOD_NAME_ALT,
129                                            NULL));
130     assert(xkb_state_mod_names_are_active(state, XKB_STATE_DEPRESSED,
131                                           (XKB_STATE_MATCH_ANY |
132                                            XKB_STATE_MATCH_NON_EXCLUSIVE),
133                                           XKB_MOD_NAME_ALT,
134                                           NULL));
135
136     /* RAlt down */
137     xkb_state_update_key(state, KEY_LEFTCTRL + EVDEV_OFFSET, XKB_KEY_UP);
138     fprintf(stderr, "dumping state for RAlt down:\n");
139     print_state(state);
140     assert(!xkb_state_mod_name_is_active(state, XKB_MOD_NAME_CTRL,
141                                          XKB_STATE_EFFECTIVE));
142     assert(xkb_state_mod_name_is_active(state, XKB_MOD_NAME_ALT,
143                                         XKB_STATE_DEPRESSED));
144     assert(xkb_state_mod_names_are_active(state, XKB_STATE_DEPRESSED,
145                                           XKB_STATE_MATCH_ANY,
146                                           XKB_MOD_NAME_CTRL,
147                                           XKB_MOD_NAME_ALT,
148                                           NULL));
149
150     /* none down */
151     xkb_state_update_key(state, KEY_RIGHTALT + EVDEV_OFFSET, XKB_KEY_UP);
152     assert(!xkb_state_mod_name_is_active(state, XKB_MOD_NAME_ALT,
153                                          XKB_STATE_EFFECTIVE));
154
155     /* Caps locked */
156     xkb_state_update_key(state, KEY_CAPSLOCK + EVDEV_OFFSET, XKB_KEY_DOWN);
157     xkb_state_update_key(state, KEY_CAPSLOCK + EVDEV_OFFSET, XKB_KEY_UP);
158     fprintf(stderr, "dumping state for Caps Lock:\n");
159     print_state(state);
160     assert(xkb_state_mod_name_is_active(state, XKB_MOD_NAME_CAPS,
161                                         XKB_STATE_LOCKED));
162     assert(xkb_state_led_name_is_active(state, XKB_LED_NAME_CAPS));
163     num_syms = xkb_key_get_syms(state, KEY_Q + EVDEV_OFFSET, &syms);
164     assert(num_syms == 1 && syms[0] == XKB_KEY_Q);
165
166     /* Caps unlocked */
167     xkb_state_update_key(state, KEY_CAPSLOCK + EVDEV_OFFSET, XKB_KEY_DOWN);
168     xkb_state_update_key(state, KEY_CAPSLOCK + EVDEV_OFFSET, XKB_KEY_UP);
169     assert(!xkb_state_mod_name_is_active(state, XKB_MOD_NAME_CAPS,
170                                          XKB_STATE_EFFECTIVE));
171     assert(!xkb_state_led_name_is_active(state, XKB_LED_NAME_CAPS));
172     num_syms = xkb_key_get_syms(state, KEY_Q + EVDEV_OFFSET, &syms);
173     assert(num_syms == 1 && syms[0] == XKB_KEY_q);
174
175     xkb_state_unref(state);
176 }
177
178 static void
179 test_serialisation(struct xkb_keymap *keymap)
180 {
181     struct xkb_state *state = xkb_state_new(keymap);
182     xkb_mod_mask_t base_mods;
183     xkb_mod_mask_t latched_mods;
184     xkb_mod_mask_t locked_mods;
185     xkb_mod_mask_t effective_mods;
186     xkb_mod_index_t caps, shift, ctrl;
187     xkb_group_index_t base_group = 0;
188     xkb_group_index_t latched_group = 0;
189     xkb_group_index_t locked_group = 0;
190
191     assert(state);
192
193     caps = xkb_map_mod_get_index(keymap, XKB_MOD_NAME_CAPS);
194     assert(caps != XKB_MOD_INVALID);
195     shift = xkb_map_mod_get_index(keymap, XKB_MOD_NAME_SHIFT);
196     assert(shift != XKB_MOD_INVALID);
197     ctrl = xkb_map_mod_get_index(keymap, XKB_MOD_NAME_CTRL);
198     assert(ctrl != XKB_MOD_INVALID);
199
200     xkb_state_update_key(state, KEY_CAPSLOCK + EVDEV_OFFSET, XKB_KEY_DOWN);
201     xkb_state_update_key(state, KEY_CAPSLOCK + EVDEV_OFFSET, XKB_KEY_UP);
202     base_mods = xkb_state_serialize_mods(state, XKB_STATE_DEPRESSED);
203     assert(base_mods == 0);
204     latched_mods = xkb_state_serialize_mods(state, XKB_STATE_LATCHED);
205     assert(latched_mods == 0);
206     locked_mods = xkb_state_serialize_mods(state, XKB_STATE_LOCKED);
207     assert(locked_mods == (1 << caps));
208     effective_mods = xkb_state_serialize_mods(state, XKB_STATE_EFFECTIVE);
209     assert(effective_mods == locked_mods);
210
211     xkb_state_update_key(state, KEY_LEFTSHIFT + EVDEV_OFFSET, XKB_KEY_DOWN);
212     base_mods = xkb_state_serialize_mods(state, XKB_STATE_DEPRESSED);
213     assert(base_mods == (1 << shift));
214     latched_mods = xkb_state_serialize_mods(state, XKB_STATE_LATCHED);
215     assert(latched_mods == 0);
216     locked_mods = xkb_state_serialize_mods(state, XKB_STATE_LOCKED);
217     assert(locked_mods == (1 << caps));
218     effective_mods = xkb_state_serialize_mods(state, XKB_STATE_EFFECTIVE);
219     assert(effective_mods == (base_mods | locked_mods));
220
221     base_mods |= (1 << ctrl);
222     xkb_state_update_mask(state, base_mods, latched_mods, locked_mods,
223                           base_group, latched_group, locked_group);
224
225     assert(xkb_state_mod_index_is_active(state, ctrl, XKB_STATE_DEPRESSED));
226     assert(xkb_state_mod_index_is_active(state, ctrl, XKB_STATE_EFFECTIVE));
227
228     xkb_state_unref(state);
229 }
230
231 static void
232 test_repeat(struct xkb_keymap *keymap)
233 {
234     assert(!xkb_key_repeats(keymap, KEY_LEFTSHIFT + 8));
235     assert(xkb_key_repeats(keymap, KEY_A + 8));
236     assert(xkb_key_repeats(keymap, KEY_8 + 8));
237     assert(xkb_key_repeats(keymap, KEY_DOWN + 8));
238     assert(xkb_key_repeats(keymap, KEY_KBDILLUMDOWN + 8));
239 }
240
241 int
242 main(void)
243 {
244     struct xkb_context *context = test_get_context();
245     struct xkb_keymap *keymap;
246
247     assert(context);
248
249     keymap = test_compile_rules(context, "evdev", "pc104", "us", NULL, NULL);
250     assert(keymap);
251
252     test_update_key(keymap);
253     test_serialisation(keymap);
254     test_repeat(keymap);
255
256     xkb_map_unref(keymap);
257     xkb_context_unref(context);
258 }